In vitro and in vivo models define a molecular signature reference for human embryonic notochordal cells

ISCIENCE(2024)

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摘要
Understanding the emergence of human notochordal cells (NC) is essential for the development of regenerative approaches. We present a comprehensive investigation into the specification and generation of bona fide NC using a straightforward pluripotent stem cell (PSC)-based system benchmarked with human fetal notochord. By integrating in vitro and in vivo transcriptomic data at single -cell resolution, we establish an extended molecular signature and overcome the limitations associated with studying human notochordal lineage at early developmental stages. We show that TGF-b inhibition enhances the yield and homogeneity of notochordal lineage commitment in vitro. Furthermore, this study characterizes regulators of cell -fate decision and matrisome enriched in the notochordal niche. Importantly, we identify specific cell -surface markers opening avenues for differentiation refinement, NC purification, and functional studies. Altogether, this study provides a human notochord transcriptomic reference that will serve as a resource for notochord identification in human systems, diseased -tissues modeling, and facilitating future biomedical research.
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关键词
Notochord,Single-cell RNA-seq,Human fetal tissue,Transcription factors,Signaling pathways,surface markers,Matrisome,human pluripotent stem cells,Intervertebral disc,Mouse embryo
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